Literature DB >> 26399494

Highly Efficient Release of Glycopeptides from Hydrazide Beads by Hydroxylamine Assisted PNGase F Deglycosylation for N-Glycoproteome Analysis.

Junfeng Huang1,2, Hao Wan1,3, Yating Yao1,2, Jinan Li1,2, Kai Cheng1, Jiawei Mao1,2, Jin Chen1,2, Yan Wang1,2, Hongqiang Qin1, Weibing Zhang3, Mingliang Ye1, Hanfa Zou1.   

Abstract

Selective enrichment of glycopeptides from complex sample followed by cleavage of N-glycans by PNGase F to expose an easily detectable mark on the former glycosylation sites has become the popular protocol for comprehensive glycoproteome analysis. On account of the high enrichment specificity, hydrazide chemistry based solid-phase extraction of N-linked glycopeptides technique has sparked numerous interests. However, the enzymatic release of glycopeptides captured by hydrazide beads through direct incubation of the beads with PNGase F is not efficient due to the inherent steric hindrance effect. In this study, we developed a hydroxylamine assisted PNGase F deglycosylation (HAPD) method using the hydroxylamine to release glycopeptides captured on the hydrazide beads through the cleavage of hydrazone bonds by transamination followed with the PNGase F deglycosylation of the released glycopeptides in the free solution. Because of the homogeneous condition for the deglycosylation, the recovery of deglycosylated peptides (deglycopeptides) was improved significantly. It was found that 27% more N-glycosylation sites were identified by the HAPD strategy compared with the conventional method. Moreover, the ratio of identified N-terminal glycosylated peptides was improved over 5-fold.

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Year:  2015        PMID: 26399494     DOI: 10.1021/acs.analchem.5b02669

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  13 in total

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Authors:  Morten Thaysen-Andersen; Nicolle H Packer; Benjamin L Schulz
Journal:  Mol Cell Proteomics       Date:  2016-02-29       Impact factor: 5.911

3.  Recent advances in mass spectrometry (MS)-based glycoproteomics in complex biological samples.

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Journal:  Trends Analyt Chem       Date:  2018-10-15       Impact factor: 12.296

4.  Isolation and characterization of glycosylated neuropeptides.

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Journal:  Methods Enzymol       Date:  2019-08-12       Impact factor: 1.600

5.  Large-scale site-specific mapping of the O-GalNAc glycoproteome.

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Journal:  Nat Protoc       Date:  2020-07-17       Impact factor: 13.491

6.  Maltose-Functionalized Hydrophilic Magnetic Nanoparticles with Polymer Brushes for Highly Selective Enrichment of N-Linked Glycopeptides.

Authors:  Changfen Bi; Yulu Liang; Lijin Shen; Shanshan Tian; Kai Zhang; Yiliang Li; Xiwen He; Langxing Chen; Yukui Zhang
Journal:  ACS Omega       Date:  2018-02-07

Review 7.  Characterization of Cell Glycocalyx with Mass Spectrometry Methods.

Authors:  Qiongyu Li; Yixuan Xie; Maurice Wong; Carlito B Lebrilla
Journal:  Cells       Date:  2019-08-13       Impact factor: 6.600

Review 8.  Chemical Glycoproteomics.

Authors:  Krishnan K Palaniappan; Carolyn R Bertozzi
Journal:  Chem Rev       Date:  2016-11-18       Impact factor: 60.622

9.  Sequential phosphoproteomics and N-glycoproteomics of plasma-derived extracellular vesicles.

Authors:  Hillary Andaluz Aguilar; Anton B Iliuk; I-Hsuan Chen; W Andy Tao
Journal:  Nat Protoc       Date:  2019-12-20       Impact factor: 17.021

10.  Conservation of oncofetal antigens on human embryonic stem cells enables discovery of monoclonal antibodies against cancer.

Authors:  Heng Liang Tan; Charlene Yong; Bao Zhu Tan; Wey Jia Fong; Jayanthi Padmanabhan; Angela Chin; Vanessa Ding; Ally Lau; Lu Zheng; Xuezhi Bi; Yuansheng Yang; Andre Choo
Journal:  Sci Rep       Date:  2018-08-02       Impact factor: 4.379

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